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Seismic Assessment of a Reinforced Concrete Frame Beam Column Connection Extracted from an Earthquake-Damaged Building

机译:地震损坏建筑提取的钢筋混凝土框架柱柱连接的地震评估

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In seismic assessment of existing reinforced concrete buildings, the plastic behavior of beams and columns are typically represented by concentrated plastic hinges at the end of the members and the beam-column joint is considered rigid or partially rigid. This approach; however, does not account for the joint deterioration caused by cyclic seismic loading as observed during past earthquakes and also in experimental tests. The observations indicate that the potential for joint deterioration is higher in older concrete buildings. In this paper, the seismic behavior of a full-scale reinforced concrete beam-column connection extracted from an earthquake-damaged building is evaluated using structural testing and also numerical analysis. Cyclic testing is performed up to a column drift of 3%. Two analytical models of the connection are developed considering the joint flexibility; one model considers the rigid end offset approach recommended by ASCE/SEI 41, and the other model uses a lumped-plasticity joint spring model which is calibrated using the experimental test results. The test results show that the plastic mechanism of the connection is controlled by the joint flexibility in shear and that slippage of the beam bottom bars occurred after plastic hinges developed at the beam ends. These results are validated using the analytical model with joint lumped-plasticity. The model with end offsets, on the other hand, fails to adequately represent the specimen behavior. These findings indicate that nonlinear modeling of beam-column joints is critical in seismic assessments of older reinforced concrete buildings.
机译:在现有钢筋混凝土建筑物的地震评估中,梁和柱的塑性行为通常由构件末端的浓缩塑料铰链表示,并且梁柱接头被认为是刚性或部分刚性的。这种方法;然而,不考虑在过去地震期间观察到的循环地震载荷引起的关节劣化,并且在实验测试中也是如此。观察结果表明,较旧的混凝土建筑物的关节劣化潜力较高。本文采用结构检测评估了从地震损坏建筑物中提取的全垢钢筋混凝土梁柱连接的地震行为,以及数值分析。循环测试的柱漂移为3%。考虑到关节灵活性,开发了两种连接的分析模型;一种模型考虑ASCE / SEI 41推荐的刚性结束偏移方法,另一个模型使用校准的集成塑性关节弹簧模型,使用实验测试结果进行校准。测试结果表明,连接的塑料机构通过剪切中的关节柔韧性来控制,并且在梁在梁的塑料铰链后发生梁底部条的滑动。这些结果是使用具有关节整形性的分析模型进行验证。另一方面,具有最终偏移的模型无法充分代表样本行为。这些发现表明光束柱关节的非线性建模对于老钢筋混凝土建筑的地震评估至关重要。

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